Size-effect on the apparent tensile strength of brittle materials with spherical cavities

被引:15
作者
Correas, A. Chao [1 ]
Corrado, M. [1 ]
Sapora, A. [1 ]
Cornetti, P. [1 ]
机构
[1] Politecn Torino, Dept Struct Geotech & Bldg Engn, Corso Duca Abruzzi 24, I-10129 Turin, Italy
关键词
Spherical cavity; Size effect; Quasi-brittle materials; Finite Fracture Mechanics; Cohesive Zone Model; Theory of Critical Distances; FINITE FRACTURE-MECHANICS; CRACK INITIATION; STRESS; HOLE; TOUGHNESS; CRITERION; PREDICTION; SPECIMENS; ONSET; MODEL;
D O I
10.1016/j.tafmec.2021.103120
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The decrease of the apparent uniaxial tensile strength resulting from a single flawless spherical cavity in an infinite linear elastic continuum under uniaxial tension is investigated. To this end, a new generalized semianalytical expression for the stress intensity factor of an annular crack surrounding the spherical cavity under different loading conditions is proposed and validated. The apparent tensile strength is then estimated by four different approaches: two criteria implement a single condition, either on the stress field (Theory of Critical Distances) or on the energy release rate (equivalent Linear Elastic Fracture Mechanics), whereas the other two are stress-energy coupled criteria, namely the Finite Fracture Mechanics and the Cohesive Zone Model. Finally, theoretical predictions are discussed and compared with experimental data and atomistic simulations available in the literature, showing good correlation.
引用
收藏
页数:11
相关论文
共 35 条
  • [1] Alnaes M., 2015, Arch Numer Softw, V3
  • [2] [Anonymous], 1921, Philosophical Transactions of the Royal Society of London
  • [3] [Anonymous], 1933, J APPL MECH, DOI [DOI 10.1115/1.4012173, 10.1115/1.4012173]
  • [4] Hardness and toughness of sodium borosilicate glasses via Vickers's indentations
    Barlet, Marina
    Delaye, Jean-Marc
    Charpentier, Thibault
    Gennisson, Mickael
    Bonamy, Daniel
    Rouxel, Tanguy
    Rountree, Cindy L.
    [J]. JOURNAL OF NON-CRYSTALLINE SOLIDS, 2015, 417 : 66 - 79
  • [5] Bazant Z.P., 2005, Scaling of Structural Strength, DOI DOI 10.1016/B978-0-7506-6849-1.X5000-7
  • [6] EFFECT OF MICROMECHANICAL STRESS CONCENTRATIONS ON STRENGTH OF POROUS GLASS
    BERTOLOTTI, RL
    FULRATH, RM
    [J]. JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1967, 50 (11) : 558 - +
  • [7] From yield to fracture, failure initiation captured by molecular simulation
    Brochard, Laurent
    Tejada, Ignacio G.
    Sab, Karam
    [J]. JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2016, 95 : 632 - 646
  • [8] A finite fracture mechanics model for the prediction of the open-hole strength of composite laminates
    Camanho, P. P.
    Ercin, G. H.
    Catalanotti, G.
    Mahdi, S.
    Linde, P.
    [J]. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2012, 43 (08) : 1219 - 1225
  • [9] Penny-shaped cracks by Finite Fracture Mechanics
    Cornetti, P.
    Sapora, A.
    [J]. INTERNATIONAL JOURNAL OF FRACTURE, 2019, 219 (01) : 153 - 159
  • [10] Finite fracture mechanics and cohesive crack model: Weight functions vs. cohesive laws
    Cornetti, P.
    Munoz-Reja, M.
    Sapora, A.
    Carpinteri, A.
    [J]. INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2019, 156 : 126 - 136